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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Coupled Pb isotopic and trace element systematics of the Tissint meteorite: Geochemical signatures of the depleted shergottite source mantle
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Coupled Pb isotopic and trace element systematics of the Tissint meteorite: Geochemical signatures of the depleted shergottite source mantle

机译:耦合Pb同位素和痕量元素系统的陨石岩:耗尽的Shercottites源地幔的地球化学特征

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摘要

The application of Martian meteorite U-Th-Pb isotope systematics to track the geochemical evolution of the Martian mantle has had limited success because of the difficulty in discriminating an indigenous magmatic Pb component from secondary near-surface components that have additionally been overprinted by terrestrial contamination. To mitigate this challenge, a successive acid-leaching experiment was conducted on the Tissint meteorite, the freshest, witnessed fall of a primitive, olivine-bearing Martian basalt. Trace element concentration analyses of acid leachates and residues indicate that secondary terrestrial contaminants were effectively removed by the early steps in the leaching experiments and that the acid residues contain pristine Pb from Tissint. The acid residue, which shows the most depleted REE signature, also has the least radiogenic Pb isotopic composition (Pb-206/Pb-204 = 10.948, Pb-207/Pb-204 = 11.187, Pb-208/Pb-204 = 30.228). A two-stage mantle evolution model based on this composition indicates that the Tissint mantle has the lowest mu-value (U-238/Pb-204 = 1.62 +/- 0.09) among the shergottite sources. (C) 2017 Elsevier B.V. All rights reserved.
机译:Martian Meteorite U-Th-PB同位素系统的应用追踪Martian Mantle的地球化学演变已经取得了有限的成功,因为难以判断来自近污染覆盖的二次近表面组分的土着岩浆Pb组分。为了缓解这一挑战,在Tistint陨石上进行了连续的酸浸出实验,是最新鲜的,最初的原始橄榄石火星玄武岩的最新性,最目睹的。酸渗滤液和残基的痕量元素浓度分析表明,通过浸出实验中的早期步骤有效地除去次要陆地污染物,并且酸残基含有来自组织的原始PB。显示最耗尽的REE签名的酸残基也具有最小的辐射性Pb同位素组合物(PB-206 / PB-204 = 10.948,PB-207 / PB-204 = 11.187,PB-208 / PB-204 = 30.228 )。基于该组合物的两级地幔演化模型表明,在Shercottits来源中,Tissint Mantle具有最低的MU值(U-238 / PB-204 = 1.62 +/- 0.09)。 (c)2017年Elsevier B.V.保留所有权利。

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